The synthesis and applications of novel aryloxy/oligoethyleneoxy substituted polyphosphazenes as solid polymer electrolytes

被引:32
作者
Allcock, HR [1 ]
Kellam, EC [1 ]
机构
[1] Penn State Univ, Dept Chem, Davey Lab 152, University Pk, PA 16802 USA
关键词
synthesis; energy storage; aryloxy/oligoethyleneoxy; solid polymer electrolyte; polyphosphazene;
D O I
10.1016/S0167-2738(02)00694-X
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Polyphosphazenes with two different types of side group structures based on aryloxy and oligo-ethyleneoxy units have been synthesized and examined as solid polymer electrolytes. The aryloxy groups improve the mechanical properties, while the oligoethyleneoxy units facilitate lithium ion transport. Two different polymer structures have been studied: co-substituent phenoxy/oligo-ethyleneoxy polyphosphazenes with the general structure [NP(OC6H5)(OCH2CH2),OCH3)(2)] and singlesubstituent phosphazenes with aryloxy groups that bear oligoethyleneoxy units in the para position of the aromatic rings, having the formula {NP[OC6H4(OCH2CH2)(x)OCH3](2)}. Polymers of both types contain the same 50:50 molar ratio of aryloxy/ oligoethyleneoxy groups, but their properties vary significantly. In general, the gum-like co-substituent polymers have lower glass transition temperatures and higher ionic conductivities. The single-substituent polymers are tough materials that form excellent films, but have slightly lower ionic conductivities. Factors that affect the ionic conductivity, including glass transition temperature, etheric oxygen concentration, and steric shielding of the phosphazene backbone are discussed. (C) 2003 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:401 / 414
页数:14
相关论文
共 33 条
[1]  
Allcock H. R., 1990, CONT POLYM CHEM
[2]  
Allcock H. R., 1972, Phosphorus-Nitrogen Compounds: cyclic, linear, and high polymeric systems
[3]   PHOSPHONITRILIC COMPOUNDS .6. HIGH MOLECULAR WEIGHT POLY(ALKOXY- AND ARYLOXPHOSPHAZENES) [J].
ALLCOCK, HR ;
KUGEL, RL ;
VALAN, KJ .
INORGANIC CHEMISTRY, 1966, 5 (10) :1709-&
[4]   SIDE-GROUP CONSTRUCTION IN HIGH POLYMERIC PHOSPHAZENES VIA LITHIOPHENOXY INTERMEDIATES [J].
ALLCOCK, HR ;
FULLER, TJ ;
EVANS, TL .
MACROMOLECULES, 1980, 13 (06) :1325-1332
[5]   Ionic conduction in polyphosphazene solids and gels:: 13C, 31P, and 15N NMR spectroscopy and molecular dynamics simulations [J].
Allcock, HR ;
Napierala, ME ;
Olmeijer, DL ;
Best, SA ;
Merz, KM .
MACROMOLECULES, 1999, 32 (03) :732-741
[6]   Synthesis and characterization of ionically conducting alkoxy ether alkoxy mixed-substituent poly(organophosphazenes) and their use as solid solvents for ionic conduction [J].
Allcock, HR ;
Napierala, ME ;
Cameron, CG ;
OConnor, SJM .
MACROMOLECULES, 1996, 29 (06) :1951-1956
[7]   Synthesis of polyphosphazenes with ethyleneoxy-containing side groups: New solid electrolyte materials [J].
Allcock, HR ;
Kuharcik, SE ;
Reed, CS ;
Napierala, ME .
MACROMOLECULES, 1996, 29 (10) :3384-3389
[8]   Effect of oligo(ethyleneoxy)cyclotriphosphazenes, tetraglyme, and other small molecules on the ionic conductivity of the poly[bis(methoxyethoxyethoxy)phosphazene] (MEEP)/lithium triflate system [J].
Allcock, HR ;
Ravikiran, R ;
OConnor, SJM .
MACROMOLECULES, 1997, 30 (11) :3184-3190
[9]   SYNTHESIS OF HIGH POLYMERIC ALKOXY- AND ARYLOXPHOSPHONITRILES [J].
ALLCOCK, HR ;
KUGEL, RL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1965, 87 (18) :4216-&
[10]   Polyphosphazenes bearing branched and linear oligoethyleneoxy side groups as solid solvents for ionic conduction [J].
Allcock, HR ;
OConnor, SJM ;
Olmeijer, DL ;
Napierala, ME ;
Cameron, CG .
MACROMOLECULES, 1996, 29 (23) :7544-7552